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  2. Fictitious force - Wikipedia

    en.wikipedia.org/wiki/Fictitious_force

    The fictitious force called a pseudo force might also be referred to as a body force. It is due to an object's inertia when the reference frame does not move inertially any more but begins to accelerate relative to the free object. In terms of the example of the passenger vehicle, a pseudo force seems to be active just before the body touches ...

  3. Non-inertial reference frame - Wikipedia

    en.wikipedia.org/wiki/Non-inertial_reference_frame

    In general, the expression for any fictitious force can be derived from the acceleration of the non-inertial frame. [6] As stated by Goodman and Warner, "One might say that F = m a holds in any coordinate system provided the term 'force' is redefined to include the so-called 'reversed effective forces' or 'inertia forces'."

  4. Brownian dynamics - Wikipedia

    en.wikipedia.org/wiki/Brownian_dynamics

    In Langevin dynamics, the equation of motion using the same notation as above is as follows: [1] [2] [3] ¨ = ˙ + where: . is the mass of the particle. ¨ is the acceleration is the friction constant or tensor, in units of /.

  5. Centrifugal force - Wikipedia

    en.wikipedia.org/wiki/Centrifugal_force

    Centrifugal force is a fictitious force in Newtonian mechanics (also called an "inertial" or "pseudo" force) that appears to act on all objects when viewed in a rotating frame of reference. It appears to be directed radially away from the axis of rotation of the frame.

  6. Coriolis force - Wikipedia

    en.wikipedia.org/wiki/Coriolis_force

    The centrifugal force acts outwards in the radial direction and is proportional to the distance of the body from the axis of the rotating frame. These additional forces are termed inertial forces, fictitious forces, or pseudo forces. By introducing these fictitious forces to a rotating frame of reference, Newton's laws of motion can be applied ...

  7. Molecular dynamics - Wikipedia

    en.wikipedia.org/wiki/Molecular_dynamics

    It is referred to simply as the potential in physics, or the force field in chemistry. The first equation comes from Newton's laws of motion ; the force F {\displaystyle F} acting on each particle in the system can be calculated as the negative gradient of U ( X ) {\displaystyle U(X)} .

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